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Wavelength and temperature dependence properties of human blood-serum
Authors:H. El-Kashef  M. A. Atia
Affiliation:a Physics Department, Faculty of Science, Tanta University, Tanta, Egypt;b Laser Center, Alhikmah Hospital, El-Mansura, Egypt
Abstract:For biological importance and general scientific interest, the present paper studies the physical properties dependent on wavelength and temperature, for six different samples of human blood-serum, at two different laser wavelengths (514.5 and 632.8 nm). The properties are described in terms of scalar quantities, viz. refractive index or optical permittivity, optical and dielectric dispersion. A modified and high accurate laser Mach–Zehnder interferometric technique is used for measurement of the refractive index (n) and its gradient with temperature (dn/dT). The values of n and dn/dT are applied to calculate the optical permittivity (var epsilon) and its gradient with temperature dvar epsilon/dT. The refractive properties such as the variation of n, var epsilon, −dn/dT and, −dvar epsilon/dT as a functions of wavelengths are determined. On the other hand, the optical properties such as reflectance, transmittance and absorptance as a function of light incident angle, temperature and wavelength are studied. Additionally the following dielectric parameters are calculated: specific refractivity, specific dispersivity, polarizability per unit volume, wave impedance, volume expansion coefficient and the electric susceptibility.
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